首页> 外文期刊>Journal of biomedical materials research, Part A >Hybrid hyaluronic acid hydrogel/poly(ε-caprolactone) scaffold provides mechanically favorable platform for cartilage tissue engineering studies
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Hybrid hyaluronic acid hydrogel/poly(ε-caprolactone) scaffold provides mechanically favorable platform for cartilage tissue engineering studies

机译:杂交透明质酸水凝胶/聚(ε-己内酯)支架为软骨组织工程研究提供机械有利平台

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Hybrid scaffolds for cartilage tissue engineering provide the potential for high stiffness properties in tension and compression while exhibiting the viscoelastic response found in hydrogels and native cartilage tissue. We investigate the impact of a hybrid scaffold fabricated from a hyaluronic acid (HA)-based hydrogel combined with porous poly(ε-caprolactone) (PCL) material formed by a particulate leaching method to study dedifferentiated chondrocyte response. The material properties of the hybrid scaffold showed mean Young's moduli in tension which were similar to human articular cartilage but not statistically different between the hybrid and porous PCL scaffolds at 2.02 and 2.07 MPa, respectively. For both the hybrid and porous PCL control scaffolds in compression at low loading frequencies (<1 Hz) and 10% strain peak amplitude the Young's moduli are not statistically distinct. However, at frequencies in the range of normal human gait from 1 to2 Hz, hybrid scaffolds exhibit significantly (p < 0.01) increased loss moduli indicating additional contribution of the viscous phase to stiffness. Dedifferentiated chondrocytes seeded onto the scaffolds exhibited a rounded morphology in hybrid scaffolds however ECM protein expression levels of collagen type I, collagen type II, and aggrecan are not different from the PCL control scaffolds. These results provide a model platform to investigate cell response to mechanical and chemical cues in a hybrid scaffold system with mechanical properties similar to human cartilage that does not contribute to differentiation in order to identify the appropriate design and development parameters to promote formation of extracellular matrix and investigate chondrocyte scaffold interactions.
机译:软骨组织工程的杂交支架提供了张力和压缩中的高刚度特性的潜力,同时表现出水凝胶和天然软骨组织中发现的粘弹性反应。我们研究了由透明质酸(HA)的水凝胶制成的杂交支架与由颗粒浸出方法形成的多孔聚(ε-己内酯)(PCL)材料的影响,以研究去除了消化的软骨细胞反应。杂交支架的材料特性显示平均杨氏的张力模育,其与人关节软骨相似,但分别在2.02和2.07MPa的杂种和多孔PCL支架之间具有统计学上不同。对于在低负载频率(<1Hz)的压缩中的杂化和多孔PCL控制支架和杨氏的Moduli的10%的菌株峰值幅度没有统计学上。然而,在1至2Hz的正常人体步态范围内的频率下,杂交支架显着表现出显着(P <0.01)增加的损失模量,表明粘性相对刚度的额外贡献。播种在支架上的去细胞化的软骨细胞在杂交支架中表现出圆形形态,但ECM蛋白表达水平I型I,II型,胶原蛋白和蛋白酶与PCL控制支架不同。这些结果提供了一种模型平台,用于调查杂交支架系统中的机械和化学线索的电池响应,其具有与人类软骨类似的机械性能,这些性能不会有助于分化,以确定适当的设计和开发参数以促进细胞外基质的形成和调查软骨细胞脚手架相互作用。

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